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Online since: October 2010
Authors: Ying Peng, Jian Hua Liu
UPR is a new building and decoration materials.
After the ingredients and the raw materials being mixed in the polymerization reaction within the reactor, polymerization is carried out at room temperature (21~ 24°C).
(5) Only two-phase of the composite materials, that UPR phase and inclusion phase of rigid particles. e.g
Liu: Journal of Hunan University of Science &Technology (Natural Science Edition)Vol. 24(2009), p.95-97 In Chinese [2] W.
Sun: Journal of Nanjing University of Aeronautics &Astronautics Vol.35(2003), p. 435-440 In Chinese [7] P.
After the ingredients and the raw materials being mixed in the polymerization reaction within the reactor, polymerization is carried out at room temperature (21~ 24°C).
(5) Only two-phase of the composite materials, that UPR phase and inclusion phase of rigid particles. e.g
Liu: Journal of Hunan University of Science &Technology (Natural Science Edition)Vol. 24(2009), p.95-97 In Chinese [2] W.
Sun: Journal of Nanjing University of Aeronautics &Astronautics Vol.35(2003), p. 435-440 In Chinese [7] P.
Online since: November 2015
Authors: Paula Łada, Katarzyna Konopka, Marta Bartnik, Aleksandra Miazga
Introduction
Recently, a lot of researches are focused on creating new combinations of materials.
In these group of materials are ceramic matrix composites with the metal addition [1,2].
Pecharroman, The challenge of ceramic/metal microcomposites and nanocomposites, Progress in Materials Science 52 (2007) 1017-1090 [2]K.
Szafran, Ceramic-metal composites with an interpenetrating network, Materials Chemistry and Physics 81 (2003) 329-332 [3]K.
Tanimoto, Mechanical performance of 3Y-TZP/Ni composites: bending, and uniaxial fatigue tests, Journal of Materials Research 17 (2002) 1592-1600 [9] A.
In these group of materials are ceramic matrix composites with the metal addition [1,2].
Pecharroman, The challenge of ceramic/metal microcomposites and nanocomposites, Progress in Materials Science 52 (2007) 1017-1090 [2]K.
Szafran, Ceramic-metal composites with an interpenetrating network, Materials Chemistry and Physics 81 (2003) 329-332 [3]K.
Tanimoto, Mechanical performance of 3Y-TZP/Ni composites: bending, and uniaxial fatigue tests, Journal of Materials Research 17 (2002) 1592-1600 [9] A.
Online since: July 2013
Authors: Bao Jiao Gao, Su Yu Liu, Yun Feng Yang
Materials and methods
Materials
PVA(DP: 2200) were purchased from Shanxi Sanwei Group. 50% glutaraldehyde, ether and Span-80 were provided by Tianda Chemical Reagent Factory(Tianjin,Chian).
Journal of Biotechnology.
Materials Science and Engineering A.
Journal of Magnetism and Magnetic Materials.
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms.
Journal of Biotechnology.
Materials Science and Engineering A.
Journal of Magnetism and Magnetic Materials.
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms.
Online since: October 2015
Authors: Clemens Müller, Enrico Bruder, Peter Groche, Lennart Wießner, Thorsten Gröb
Journal of The Minerals, Metals & Materials Society, Vol. 58 (2006) 33-39
[5] K.
Journal of Magnetism and Magnetic Materials 242-245 (2002), 1399-1401 [7] S.
Pippan, Magnetic characteristics of HPT deformed soft-magnetic materials, Journal of Magnetism and Magnetic Materials 322 (2008), 2984-2988 [8] T.
Schultz, Nanocrystalline high performance permanent magnets, Journal of Magnetism and Magnetic Materials 242-245 (2002) 1277-1283 [11] T.
Segal, Materials processing by simple shear, Material Science and Engineering A 197 (1995) 157-164 [14] F.
Journal of Magnetism and Magnetic Materials 242-245 (2002), 1399-1401 [7] S.
Pippan, Magnetic characteristics of HPT deformed soft-magnetic materials, Journal of Magnetism and Magnetic Materials 322 (2008), 2984-2988 [8] T.
Schultz, Nanocrystalline high performance permanent magnets, Journal of Magnetism and Magnetic Materials 242-245 (2002) 1277-1283 [11] T.
Segal, Materials processing by simple shear, Material Science and Engineering A 197 (1995) 157-164 [14] F.
Online since: June 2012
Authors: Yue Bo Wu, Sheng Lei, Heng Li, Yan Yan, Liu Niu, Zhong Xiang Gui
The material physical property coefficients versus to temperature are as follows: material density is 7814Kg/m3, thermophysical parameter values are the function of temperature, GCr15 steel thermophysical parameters as shown in Fig.1.
[2] R Komanduri Z.BHou: International Journal of Heat and Mass Transfer, Vol. 44 (2001), p.2845-2862 [3] Liu Qingbin: Journal of Materials Processing Technology, Vol. 88 (1999), p. 77-82
Man,J.K.Yu: International Journal of Heat and Mass Transfer, Vol.50(2007), p. 4600-4606
[5] Rybiciki E F : journal of Pressure Vessel Technology, Vol. 100 (1978), p. 256-262
[7] Chang P H,Teng T L: Computational Materials Science, Vol. 29(2004), p.511-512.
[2] R Komanduri Z.BHou: International Journal of Heat and Mass Transfer, Vol. 44 (2001), p.2845-2862 [3] Liu Qingbin: Journal of Materials Processing Technology, Vol. 88 (1999), p. 77-82
Man,J.K.Yu: International Journal of Heat and Mass Transfer, Vol.50(2007), p. 4600-4606
[5] Rybiciki E F : journal of Pressure Vessel Technology, Vol. 100 (1978), p. 256-262
[7] Chang P H,Teng T L: Computational Materials Science, Vol. 29(2004), p.511-512.
Online since: January 2012
Authors: Ying Jian Zhang, Han Dong, Wei Jun Hui, Jun Peng
Wang, Journal of Iron and Steel Research Vol, 19(2007) 5-8
[8]J.Sinczak, J.Majta, M.Glowacki, Journal of Materials Processing Technology Vol, 80-81(1998) 166-173
[9] J.Majta, R.Kuziak, M.Pietrzyk, Journal of Materials Processing Technology Vol, 60 (1996) 581-588
Majta, R.Kuziak, M.Pietrzyk, Journal of Materials Processing Technology Vol, 80–81 (1998) 524–530
Bouaziz, Materials Science and Engineering Vol 496 (2008) 329–336.
[8]J.Sinczak, J.Majta, M.Glowacki, Journal of Materials Processing Technology Vol, 80-81(1998) 166-173
[9] J.Majta, R.Kuziak, M.Pietrzyk, Journal of Materials Processing Technology Vol, 60 (1996) 581-588
Majta, R.Kuziak, M.Pietrzyk, Journal of Materials Processing Technology Vol, 80–81 (1998) 524–530
Bouaziz, Materials Science and Engineering Vol 496 (2008) 329–336.
Online since: August 2016
Authors: P.S. Khiew, W.S. Chiu, M.Y. Ho
Chiu3
1Division of Materials, Mechanics & Structures, Centre of Nanotechnology and Advanced Materials, Faculty of Engineering, University of Nottingham Malaysia Campus, Jalan Broga, 43500 Semenyih, Selangor, Malaysia.
2Department of Materials Engineering, Faculty of Engineering and Built Environment, Tunku Abdul Rahman University College, Jalan Genting Kelang, 53300 Kuala Lumpur, Malaysia.
3Low Dimensional Materials Research Center, Department of Physics, Faculty of Science, University Malaya, 50603 Kuala Lumpur, Malaysia.
The TEM images of the MoO3/graphene composite materials are shown in Fig. 1(f) and (g).
SEM micrographs of (a) graphene, (b) MoO3, (c) MoO3-graphene, (d) EDS spetrum of MoO3/graphene composite materials, TEM images of (e) graphene and (f) MoO3/graphene composite materials.
This method provides a feasible synthesis route of MoO3/graphene composite materials for supercapacitor application.
Journal of Power Sources 228 (2013) 198-205
The TEM images of the MoO3/graphene composite materials are shown in Fig. 1(f) and (g).
SEM micrographs of (a) graphene, (b) MoO3, (c) MoO3-graphene, (d) EDS spetrum of MoO3/graphene composite materials, TEM images of (e) graphene and (f) MoO3/graphene composite materials.
This method provides a feasible synthesis route of MoO3/graphene composite materials for supercapacitor application.
Journal of Power Sources 228 (2013) 198-205
Online since: October 2010
Authors: Jie Chen
The model should be able to reflect structure geometrical
shape, materials properties, force transfer path, bearing way and boundary constraints as closely as
possible.
[7] T.Ozel and Z.Zeren: Journal of Manufacturing Science and Engineering of Transactions of the ASME Vol.128(2006)No.1, p.119-129
[9] J.S.Erik, K.V.Domala, S.Kee, et al: Journal of Manufacturing Science and Engineering of Transactions of the ASME Vol123(2001)No.11, p.576-581
[10] A.Raghu, S.Melkote: Journal of Manufacturing Science and Engineering,Transactions of the ASME Vol.127(2005)No.1, p.75-83
Zuo, S.H.Wang, et al: Key Engineering Materials, Vols. 315-316(2006),p. 174-179
[7] T.Ozel and Z.Zeren: Journal of Manufacturing Science and Engineering of Transactions of the ASME Vol.128(2006)No.1, p.119-129
[9] J.S.Erik, K.V.Domala, S.Kee, et al: Journal of Manufacturing Science and Engineering of Transactions of the ASME Vol123(2001)No.11, p.576-581
[10] A.Raghu, S.Melkote: Journal of Manufacturing Science and Engineering,Transactions of the ASME Vol.127(2005)No.1, p.75-83
Zuo, S.H.Wang, et al: Key Engineering Materials, Vols. 315-316(2006),p. 174-179
Online since: August 2007
Authors: Thomas Fiedler, Andreas Öchsner
Mechanics of Materials, 35:1161-1176, 2003
Materials Science and Engineering A, 347:70-85, 2003
Materials Science and Engineering A, 352:150-161, 2003
Metallic hollow spheres materials for the future.
Material Science and Engineering Technology, 36(10), 2005
Materials Science and Engineering A, 347:70-85, 2003
Materials Science and Engineering A, 352:150-161, 2003
Metallic hollow spheres materials for the future.
Material Science and Engineering Technology, 36(10), 2005
Online since: March 2014
Authors: Tudor Voiconi, Liviu Marsavina, Dan Andrei Serban, Vadim V. Silberschmidt
Introduction
In the incipient stages of material testing, three-point bending tests were considered one of the go-to procedures in characterizing materials due to their simple setup.
Timoshenko, Strength of Materials - Part I: Elementary Theories and Problems.
Springer Science, 2008
Silberschmidt, Response of semi-crystalline thermoplastic polymers to dynamic loading: A finite element study, Computational Material Science, vol. 64, p. 116–121, 2012
[13] ASTM Standards, Standard Test Methods for Flexural Properties of Unreinforced and Reinforced Plastics and Electrical Insulating Materials. 2003.
Timoshenko, Strength of Materials - Part I: Elementary Theories and Problems.
Springer Science, 2008
Silberschmidt, Response of semi-crystalline thermoplastic polymers to dynamic loading: A finite element study, Computational Material Science, vol. 64, p. 116–121, 2012
[13] ASTM Standards, Standard Test Methods for Flexural Properties of Unreinforced and Reinforced Plastics and Electrical Insulating Materials. 2003.